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Categorical processing of fast temporal sequences in the guinea pig auditory brainstem

机译:豚鼠听觉脑干快速时间序列的分类处理

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摘要

Discrimination of temporal sequences is crucial for auditory object recognition, phoneme categorization and speech understanding. The present study shows that auditory brainstem responses (ABR) to pairs of noise bursts separated by a short gap can be classified into two distinct groups based on the ratio of gap duration to initial noise burst duration in guinea pigs. If this ratio was smaller than 0.5, the ABR to the trailing noise burst was strongly suppressed. On the other hand, if the initial noise burst duration was short compared to the gap duration (a ratio greater than 0.5), a release from suppression and/or enhancement of the trailing ABR was observed. Consequently, initial noise bursts of shorter duration caused a faster transition between response classes than initial noise bursts of longer duration. We propose that the described findings represent a neural correlate of subcortical categorical preprocessing of temporal sequences in the auditory system.
机译:时间序列的区分对于听觉对象识别,音素分类和语音理解至关重要。本研究表明,根据豚鼠的间隙持续时间与初始噪声爆发持续时间之比,对由短间隙隔开的成对噪声爆发的听觉脑干反应(ABR)可分为两个不同的组。如果该比率小于0.5,则到尾随噪声突发的ABR被强烈抑制。另一方面,如果初始噪声突发持续时间比间隙持续时间短(比率大于0.5),则观察到尾随ABR被抑制和/或增强释放。因此,持续时间较短的初始噪声突发比持续时间较长的初始噪声突发导致响应类别之间的转换更快。我们建议,所描述的发现代表听觉系统中时间序列的皮层下分类预处理的神经相关性。

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